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Field
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minerals and materials (CMMs) transporters. This platform will enable functional screening of large transporter libraries across multiple metals, generating sequence-to-function datasets to advance
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diverse sources of biological information, including the biophysical principles governing protein–DNA interactions, the genetic and epigenetic features of DNA sequences, and the three-dimensional (3D
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–DNA interactions, the genetic and epigenetic features of DNA sequences, and the three-dimensional (3D) organization of the genome and its regulatory landscape. A particular focus will be on integrating
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method development, data analysis, and experimental design. Integrate information from high-throughput screens, proteomic data, and next-generation sequencing data to generate and validate hypotheses
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this opportunity is the characterization of honey bee viromes through Next Generation Sequencing technologies (NGS) to uncover previously undescribed viral and other microbial threats to bee health. This unique
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Science or a closely related discipline. Demonstrate strong expertise in molecular microbiology techniques including PCR, sequencing, microbial culture and molecular cloning. Bring experience developing
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integrate high-dimensional molecular analyses, including single-cell RNA sequencing, spatial transcriptomics, proteomics, immune repertoire sequencing, and other multi-omics technologies. Collaborate with
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communities, testing dietary and other control modalities, as part of the learning experience. This will include various culture methods, nucleic acid extraction, PCR methods, sequence analysis
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employing a combination of genetics, molecular biology, including Ribo-Seq, RNA pull-down and mass spectrometry, reporter assays in cells and tissues, and computational sequence analyses. This implies to work
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state-of-the-art methods generative protein design, directed evolution, next gen sequencing, and laboratory automation to develop B12-dependent enzymes or artificial metalloenzymes containing different